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CN101900404B - Air-conditioner host tray and dewatering-free air-conditioner - Google Patents

Air-conditioner host tray and dewatering-free air-conditioner Download PDF

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Publication number
CN101900404B
CN101900404B CN 201010229894 CN201010229894A CN101900404B CN 101900404 B CN101900404 B CN 101900404B CN 201010229894 CN201010229894 CN 201010229894 CN 201010229894 A CN201010229894 A CN 201010229894A CN 101900404 B CN101900404 B CN 101900404B
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China
Prior art keywords
tank
air
condenser
conditioner
fan
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Expired - Fee Related
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CN 201010229894
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Chinese (zh)
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CN101900404A (en
Inventor
李耀强
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Zhuhai Pushan Machinery Co. Ltd.
Original Assignee
LISHUI REDDOT CREATIVE PRODUCT DESIGN Co Ltd
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Priority to CN 201010229894 priority Critical patent/CN101900404B/en
Publication of CN101900404A publication Critical patent/CN101900404A/en
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Publication of CN101900404B publication Critical patent/CN101900404B/en
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  • Devices For Blowing Cold Air, Devices For Blowing Warm Air, And Means For Preventing Water Condensation In Air Conditioning Units (AREA)

Abstract

The invention provides an air-conditioner host tray and a dewatering-free air-conditioner. The air-conditioner host tray is provided with an annular basin11 at the periphery of a compressor installation area; a basin12 is arranged at a condenser installation area; the annular basin11 is communicated with the basin12; a compressor18 is mounted on a platform13 at the middle of the annular basin11; the air-conditioner host tray is not provided with weep holes; a platform14 is provided with a basin15 having an arc bottom; and the basin15 and the basin12 are communicated on the edge of the platform14. The dewatering-free air-conditioner selects the air-conditioner host tray of the invention; when the air-conditioner refrigerates, condensate water is collected in the basins to help the condenser radiate and be pulverized simultaneously; and when the air-conditioner heats, the condensate water is collected in the basins, and is absorbed up for pulverization by high speed air flow generated when a fan works, and then is discharged outside the air-conditioner.

Description

Air-conditioner host tray and dewatering-free air-conditioner
Technical field
The present invention relates to a kind of air-conditioner host tray and adopt the air conditioner of this pallet, belong to the optimisation technique of air conditioner.
Background technology
Most at present air-conditioning, the function that all has refrigeration and heat is when refrigeration; The condensed water that indoor set produces all will carry out collection and treatment by every means; In order to avoid influence environment, the shortcoming of present processing method is a difficult installation, need draw condensed water and drain; When heating, off-premises station 1 also can produce condensed water, mainly the osculum collection and treatment through reserving on the collet; In the practical application, the condensed water collection and treatment that most installation personnel does not use skirt that off-premises station 1 is produced, therefore; The condensed water of often seeing a lot of off-premises stations 1 directly drips downwards, pollutes to environment, particularly when environment temperature is low; Also can produce the ice slush of suspension, when temperature raise, ice slush dropped and can cause great threat to pedestrian's life security; Even the skirt draining has been installed, when temperature was low, osculum and skirt also can be by ice-bound.
Therefore, the processing of air conditioner condensed water, true difficulty be cold day the time ice formation issues that produces.
Therefore, need no matter the mode of operation of a kind of air-conditioning of searching is refrigeration, still heat, can both handle the no draining air-conditioner that air-conditioning is not dripped fully the condensed water that air-conditioning produces.
Summary of the invention
The objective of the invention is provides a kind of air conditioner that does not have draining to the above-mentioned state of the art.
Technical scheme: a kind of air-conditioner host tray; Around the compressor installation region, be provided with an annular water tank 11; Be provided with a shape first tank 12 identical with condenser 17 bottom shapes in the condenser installation region, annular water tank 11 is communicated with first tank 12, and compressor 18 is placed on first platform 13 in the middle of the annular water tank 11; Do not establish osculum on the air-conditioner host tray; Second tank, 15, the second tanks 15 that are the arc bending bottom on second platform 14, being provided with are communicated with first tank 12, are communicated with the position than more than second platform, the 14 low 5MM; The axis of described second tank (15) and the axis of fan 16 are on the same axis.
First tank 12 near the flume wall of the outer side of cabinet than more than second platform, the 14 high 10MM.
A kind of dewatering-free air-conditioner mainly is made up of off-premises station 1, indoor set 2, holding wire 3, coolant connecting tube 4 and drainpipe 5, and said off-premises station 1 is selected above-mentioned air-conditioner host tray for use; More than the first refrigerant pipe, 171 to the second platforms, the 14 low 10MM on the condenser 17, the described first refrigerant pipe 171 is connected with compressor 18 through cross valve; The second refrigerant pipe 172 on the described condenser 17 is connected with indoor set 2 through choke valve 19; The input of drainpipe 5 is connected with indoor set 2, and output is connected with annular water tank 11; Fan 16 is positioned at second tank, 15 tops, and the direction of fan blowing is for to dry outside off-premises station from off-premises station inside; During air conditioner refrigerating, compressor 18 is pressed into the input of condenser 17 with refrigerant, i.e. the first refrigerant pipe 171 is because condenser is placed in first tank 12; And the position of the first refrigerant pipe 171 is than more than second platform, the 14 low 10MM, and the condensed water of indoor set 2 is discharged to annular water tank 11 through drainpipe 5, flows in first tank 12 again, and the water logging that can be condensed of the first refrigerant pipe 171 does not have; Because the first refrigerant pipe 171 temperature at this moment is near 120 ℃, water can be evaporated, thus the drainage problem when solving air conditioner refrigeration, simultaneously; The first refrigerant pipe 171 is cooled, after refrigerant flows through condenser 17, through choke valve 19 and coolant connecting tube 4; Get into indoor set 2, behind the heat, get back to compressor 18 through coolant connecting tube 4 again in the refrigerant absorption chamber; After pressurization, be pressed into condenser 17 once more, so move in circles, finish until refrigeration; The input temperature of the first refrigerant pipe 171 is near 120 ℃ during refrigeration; The condensed water of collecting in first tank 12 touches such high temperature, can be vaporized immediately, takes away the heat on condenser 17 surfaces; Under the suction of fan 16, be sucked into fan 16, blown to outdoor by fan 16 again; When air-conditioning heated, the condenser of off-premises station 1 had become evaporimeter, and the refrigerant temperature that flows through is low; The airborne moisture content that can will contact with evaporimeter is separated out, and drips on first tank 12, when water accumulating volume is enough; Can cover first tank 12 and the position that second tank 15 is connected automatically, get into second tank 15, according to the Bai Nuni phenomenon; Since the graviational interaction that fan 16 rotates, the air-flow flow at high speed, and the air pressure of the water surface in second tank 15 reduces; Water will upwards be attracted by air-flow, gets into trunnion and is atomized, and the steam after being atomized is blown to outside the machine by fan 16; Can produce a large amount of condensed waters during defrosting, accumulate in first tank 12, flow to the gravitation that is rotated by fan in second tank 15 again and suck after-blow gradually outside machine; During work, the shell of liquid storage cylinder and compressor 18 also can produce some condensed waters when work, receive gravity effect to flow to annular water tank 11, continues to flow to first tank 12 again; Flow to the gravitation that is rotated by fan in second tank 15 again and suck after-blow gradually outside machine; When environment temperature is below the freezing point, on second tank 15, settle electric heater, prevent water freezing.
The invention has the beneficial effects as follows:
When 1, freezing, utilize tank to collect condensed water condenser is cooled off, improved refrigerating efficiency, reduced power consumption;
When 2, heating, focus on condensed water in the tank, the motion of the high velocity air that produces during through fan work utilizes the Bai Nuni principle, picks up condensed water atomizing and blows to outside the machine.
3, only the geometry of main frame collet is adjusted, few to existing air-conditioning renovation of production process, can thoroughly solve the problem of air conditioner draining.
Description of drawings
Below in conjunction with accompanying drawing and embodiment the present invention is further specified.
Fig. 1 is a main TV structure sketch map of the present invention;
Fig. 2 is the side-looking structural representation of off-premises station of the present invention;
Fig. 3 is an off-premises station plan structure sketch map of the present invention;
Fig. 4 is an air-conditioner host tray D structure sketch map of the present invention;
Fig. 5 is an operating mode schematic diagram of the present invention.
Among the figure 1, off-premises station, 11, annular water tank, 12, tank, 13, platform, 14, platform; 15, tank, 16, fan, 17, condenser, 171, the refrigerant pipe, 172; The refrigerant pipe, 18, compressor, 19, choke valve, 2, indoor set; 3, holding wire, 4, coolant connecting tube, 5, drainpipe, 6, water pump.
The specific embodiment
Like Fig. 1, Fig. 2, Fig. 3 and shown in Figure 4, a kind of air-conditioner host tray is provided with an annular water tank 11 around the compressor installation region; Be provided with first tank 12 that shape is identical with the condenser bottom shape in the condenser installation region; Annular water tank 11 is communicated with first tank 12, and the bottom of first tank 12 is lower than the bottom of annular water tank 11, and compressor 18 is placed on first platform 13 in the middle of the annular water tank 11; Do not establish osculum on the air-conditioner host tray; Second tank, 15, the second tanks 15 that are the arc bending bottom on second platform 14, being provided with are communicated with at the edge of second platform 14 with first tank 12, and the position of connection is than more than second platform, the 14 low 5MM.
The axis of the axis of described second tank 15 and fan 16 is on the same axis.
First tank 12 near the flume wall of the outer side of cabinet than more than second platform, the 14 high 10MM.
As shown in Figure 5, a kind of no draining air-conditioner mainly is made up of off-premises station 1, indoor set 2, holding wire 3, coolant connecting tube 4 and drainpipe 5, and said off-premises station 1 is selected above-mentioned any described air-conditioner host tray of claim for use.
More than the first refrigerant pipe, 171 to the second platforms, the 14 low 10MM on the condenser 17, the described first refrigerant pipe 171 is connected with compressor 18 through cross valve.
The second refrigerant pipe 172 on the described condenser 17 is connected with indoor set 2 through choke valve 19.
The input of drainpipe 5 is connected with indoor set 2, and output is connected with annular water tank 11.
During air conditioner refrigerating, compressor 18 is pressed into the input of condenser 17 with refrigerant, i.e. the first refrigerant pipe 171 is because condenser is placed in first tank 12; And the position of the first refrigerant pipe 171 is than more than second platform, the 14 low 10MM, and the condensed water of indoor set 2 gets in first tank 12 through drainpipe 5, and the water logging that can be condensed of the first refrigerant pipe 171 does not have, because the input of condenser; Promptly the first refrigerant pipe 171 temperature at this moment is near 120 ℃, and water can be evaporated, simultaneously; The first refrigerant pipe 171 is cooled, after refrigerant flows through condenser 17, through choke valve 19 and coolant connecting tube 4; Get into indoor set 2, behind the heat, get back to compressor 18 through coolant connecting tube 4 again in the refrigerant absorption chamber; After pressurization, be pressed into condenser 17 once more, so move in circles, finish until refrigeration.
The input temperature of the first refrigerant pipe 171 is near 120 ℃ during refrigeration; The condensed water of collecting in first tank 12 one touches such high temperature, can be vaporized immediately, takes away the heat on condenser 17 surfaces; Under the suction of fan 16, be sucked into fan, blown to outdoor again by fan.Therefore, the first refrigerant pipe 171 is placed in 12 li of first tanks, condensed water is discharged to annular water tank 11 from indoor set 2 through drainpipe 5; Flow in first tank 12, condensed water one touches the first refrigerant pipe 171 that is in the condition of high temperature, will be vaporized immediately again; Thereby the drainage problem in the time of can thoroughly solving air conditioner refrigeration, and, when condensed water is vaporized; Also helped condenser 17 coolings, improved refrigerating efficiency and reduced energy consumption.
When air-conditioning heated, compressor 18 was pressed into machine 2 in the coolant connecting tube 4 back inlet chambers with refrigerant, and room air is heated; Simultaneously refrigerant is cooled, and flows to the second refrigerant pipe 172 through coolant connecting tube 4 and choke valve 19 again, flow through evaporimeter 17 after; Flow out entering compressor 18 from the first refrigerant pipe 171, be compressed again and send into coolant connecting tube 4 after machine 18 pressurizes, get into indoor set 2 then; So move in circles, until end-of-job.
When air-conditioning heated, the condenser of off-premises station 1 had become evaporimeter, and the refrigerant temperature that flows through is low, can the airborne moisture content that contact with evaporimeter be separated out; Stick on the evaporimeter, gathered many and received gravity effect later, drip on first tank 12, when water accumulating volume is enough; Can cover first tank 12 and the position that second tank 15 is connected automatically, get into second tank 15, according to the Bai Nuni phenomenon; Because the air-flow flow at high speed, the air pressure of the water surface in second tank 15 reduces, and water will upwards be attracted by air-flow; The entering trunnion is atomized, and is similar with the atomizing principles of sprayer, automobile carburetor, and the steam after being atomized is blown to outside the machine by fan.
Also can produce a large amount of condensed waters during defrosting, accumulate in first tank 12, flow to the gravitation that is rotated by fan in second tank 15 again and suck after-blow gradually outside machine.
During work, the shell of liquid storage cylinder and compressor 18 also can produce some condensed waters when work, receive gravity effect to flow to annular water tank 11, continues to flow to first tank 12 again.
When environment temperature is below the freezing point, can also on second tank 15, settle electric heater, prevent that water freezing is beneficial to atomizing.
The foregoing description only is to be used for interpretation the present invention's usefulness, and is not to be limitation of the present invention, and those skilled in the art in essential scope of the present invention, make various variations or alternative, also should belong to protection category of the present invention.

Claims (3)

1. air-conditioner host tray; Around the compressor installation region, be provided with an annular water tank (11); Be provided with a shape first tank (12) identical with condenser (17) bottom shape in the condenser installation region, annular water tank (11) is communicated with first tank (12), and compressor (18) is placed on first platform (13) in the middle of the annular water tank (11); It is characterized in that: do not establish osculum on the air-conditioner host tray; On second platform (14), be provided with second tank (15) that the bottom is the arc bending, second tank (15) is communicated with first tank (12), is communicated with the position than more than the low 5MM of second platform (14); The axis of the axis of described second tank (15) and fan (16) is on the same axis.
2. air-conditioner host tray according to claim 1 is characterized in that: first tank (12) near the flume wall of the outer side of cabinet than more than the high 10MM of second platform (14).
3. a dewatering-free air-conditioner mainly is made up of off-premises station (1), indoor set (2), holding wire (3), coolant connecting tube (4) and drainpipe (5), it is characterized in that: said off-premises station (1) is selected above-mentioned any described air-conditioner host tray of claim for use; The first refrigerant pipe (171) on the condenser (17) is than more than the low 10MM of second platform (14), and the described first refrigerant pipe (171) is connected with compressor (18) through cross valve; The second refrigerant pipe (172) on the described condenser (17) is connected with indoor set (2) through choke valve (19); The input of drainpipe (5) is connected with indoor set (2), and output is connected with annular water tank (11); Fan (16) is positioned at second tank (15) top, and the direction of fan blowing is for to dry outside off-premises station from off-premises station inside; During air conditioner refrigerating, compressor (18) is pressed into the input of condenser (17), the i.e. first refrigerant pipe (171) with refrigerant; Because condenser is placed in first tank (12), and the position of the first refrigerant pipe (171) is than more than the low 10MM of second platform (14), and the condensed water of indoor set (2) is discharged to annular water tank (11) through drainpipe (5); Flow in first tank (12), the water logging that can be condensed of the first refrigerant pipe (171) does not have again, because the first refrigerant pipe (171) temperature at this moment is near 120 ℃; Water can be evaporated, thus the drainage problem when solving air conditioner refrigeration, simultaneously; The first refrigerant pipe (171) is cooled, after refrigerant flows through condenser (17), through choke valve (19) and coolant connecting tube (4); Get into indoor set (2), behind the heat, get back to compressor (18) through coolant connecting tube (4) again in the refrigerant absorption chamber; After pressurization, be pressed into condenser (17) once more, so move in circles, finish until refrigeration; The input temperature of the first refrigerant pipe (171) is near 120 ℃ during refrigeration; The condensed water of collecting in first tank (12) touches such high temperature; Can be vaporized immediately; Take away the heat on condenser (17) surface, under the suction of fan (16), be sucked into fan (16), blown to outdoor by fan (16) again; When air-conditioning heated, the condenser of off-premises station (1) had become evaporimeter, and the refrigerant temperature that flows through is low; The airborne moisture content that can will contact with evaporimeter is separated out, and drips on first tank (12), when water accumulating volume is enough; Can cover first tank (12) and the position that second tank (15) is connected automatically, get into second tank (15), according to the Bai Nuni phenomenon; Since the graviational interaction that fan (16) rotates, the air-flow flow at high speed, and the air pressure of the water surface in second tank (15) reduces; Water will upwards be attracted by air-flow, gets into trunnion and is atomized, and the steam after being atomized is blown to outside the machine by fan (16); Can produce a large amount of condensed waters during defrosting, accumulate in first tank (12), flow to the gravitation that is rotated by fan in second tank (15) again and suck after-blow gradually outside machine; During work, the shell of liquid storage cylinder and compressor (18) also can produce some condensed waters when work, receive gravity effect to flow to annular water tank (11), continues to flow to first tank (12) again; Flow to the gravitation that is rotated by fan in second tank (15) again and suck after-blow gradually outside machine; When environment temperature is below the freezing point, go up the arrangement electric heater at second tank (15), prevent water freezing.
CN 201010229894 2010-07-19 2010-07-19 Air-conditioner host tray and dewatering-free air-conditioner Expired - Fee Related CN101900404B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 201010229894 CN101900404B (en) 2010-07-19 2010-07-19 Air-conditioner host tray and dewatering-free air-conditioner

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Application Number Priority Date Filing Date Title
CN 201010229894 CN101900404B (en) 2010-07-19 2010-07-19 Air-conditioner host tray and dewatering-free air-conditioner

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CN101900404B true CN101900404B (en) 2012-12-19

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Families Citing this family (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103542510A (en) * 2012-07-17 2014-01-29 李耀强 Air conditioner free of water dripping
CN106989486B (en) * 2017-04-07 2020-01-31 美的集团武汉制冷设备有限公司 Control method and device of air conditioner and air conditioner
CN109340932A (en) * 2018-09-17 2019-02-15 郭云琴 A kind of air-conditioning of splash-proof

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2700766Y (en) * 2004-04-02 2005-05-18 广东科龙电器股份有限公司 Air conditioner
CN1699850A (en) * 2004-05-19 2005-11-23 乐金电子(天津)电器有限公司 Dehumidifier with improved fan cabinet fixing structure
CN1699852A (en) * 2004-05-19 2005-11-23 乐金电子(天津)电器有限公司 Compressor radiation structure for dehumidifier
CN1755220A (en) * 2004-09-28 2006-04-05 乐金电子(天津)电器有限公司 Condensation tube of window type air conditioner
CN101813338A (en) * 2009-02-23 2010-08-25 乐金电子(天津)电器有限公司 Air-conditioning outdoor unit
CN201892296U (en) * 2011-01-25 2011-07-06 李耀强 Air conditioner main machine tray and drainless air conditioner

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2700766Y (en) * 2004-04-02 2005-05-18 广东科龙电器股份有限公司 Air conditioner
CN1699850A (en) * 2004-05-19 2005-11-23 乐金电子(天津)电器有限公司 Dehumidifier with improved fan cabinet fixing structure
CN1699852A (en) * 2004-05-19 2005-11-23 乐金电子(天津)电器有限公司 Compressor radiation structure for dehumidifier
CN1755220A (en) * 2004-09-28 2006-04-05 乐金电子(天津)电器有限公司 Condensation tube of window type air conditioner
CN101813338A (en) * 2009-02-23 2010-08-25 乐金电子(天津)电器有限公司 Air-conditioning outdoor unit
CN201892296U (en) * 2011-01-25 2011-07-06 李耀强 Air conditioner main machine tray and drainless air conditioner

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Owner name: LISHUI HONGDIAN CREATIVE DESIGN + PRODUCT CO., LTD

Free format text: FORMER OWNER: LI YAOQIANG

Effective date: 20120801

C41 Transfer of patent application or patent right or utility model
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Address after: 323000 Lishui City, Lishui City Industrial Zone, the east side of the floor of the 305 floor, block two, Zhejiang

Applicant after: Lishui red dot creative design products Co., Ltd.

Address before: P.O. Box No. 35 A007 District Fuhua road 528401 Guangdong city of Zhongshan Province

Applicant before: Li Yaoqiang

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Effective date of registration: 20170629

Address after: Zhuhai City, Guangdong Province plant 519090 Bay Hong Kong Industrial District Red chip meik refrigeration equipment Co. Ltd., 1-1

Patentee after: Zhuhai Pushan Machinery Co. Ltd.

Address before: 323000 Lishui City, Lishui City Industrial Zone, the east side of the floor of the 305 floor, block two, Zhejiang

Patentee before: LISHUI REDDOT CREATIVE PRODUCT DESIGN CO., LTD.

CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20121219

Termination date: 20190719